二甘露糖基化可增强含金刚烷的去氨肽在体内的佐剂特性。

IF 2.9 3区 化学 Q1 CHEMISTRY, ORGANIC Organic & Biomolecular Chemistry Pub Date : 2024-06-17 DOI:10.1039/d4ob00592a
Marija Paurević, Aleksandra Maršavelski, Siniša Ivanković, Ranko Stojković, Rosana Ribić
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引用次数: 0

摘要

去甲氨酰二肽(MDP)是能够促进先天性和适应性免疫反应的最小基本肽聚糖亚结构。在本文中,我们报告了两种新型 MDP 类似物的设计、合成和体内佐剂特性研究,这两种类似物含有连接到去甲氨酰二肽 (DMP) 药理结构上的非手性金刚烷基,另外还被一个甘露糖亚基(衍生物 7)或两个甘露糖亚基(衍生物 11)修饰。与参考化合物 ManAdDMP 相比,引入甘露糖亚基结构是为了评估甘露糖化程度如何影响免疫反应和含核苷酸结合寡聚域蛋白 2(NOD2)的结合亲和力。两种甘露糖基化的 MDP 类似物都显示出更好的免疫调节特性,而二甘露糖基化衍生物 11 在抗OVA IgG 的产生方面显示出最高的、统计学意义上的显著增加。本研究首次合成了二甘露糖基化的 DMP 衍生物,并对其进行了免疫学评估。衍生物 11 能刺激 Th-2 极化类型的免疫反应,与参考化合物 ManAdDMP 和 MDP 相似。分子动力学(MD)模拟表明,11 的 NOD2 结合亲和力高于 7,这表明引入第二个甘露糖大大提高了结合亲和力。甘露糖与 NOD2 受体的 LRR 疏水口袋和环 2 中的关键氨基酸残基相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Di-mannosylation enhances the adjuvant properties of adamantane-containing desmuramyl peptides in vivo.

Muramyl dipeptide (MDP) is the smallest essential peptidoglycan substructure capable of promoting both innate and adaptive immune responses. Herein, we report on the design, synthesis, and in vivo study of the adjuvant properties of two novel MDP analogs containing an achiral adamantyl moiety attached to the desmuramyl dipeptide (DMP) pharmacophore and additionally modified by one mannosyl subunit (derivative 7) or two mannosyl subunits (derivative 11). Mannose substructures were introduced in order to assess how the degree of mannosylation affects the immune response and nucleotide-binding oligomerization-domain-containing protein 2 (NOD2) binding affinity, compared to the reference compound ManAdDMP. Both mannosylated MDP analogs showed improved immunomodulating properties, while the di-mannosylated derivative 11 displayed the highest, statistically significant increase in anti-OVA IgG production. In this study, for the first time, the di-mannosylated DMP derivative was synthesized and immunologically evaluated. Derivative 11 stimulates a Th-2-polarized type of immune reaction, similar to the reference compound ManAdDMP and MDP. Molecular dynamics (MD) simulations demonstrate that 11 has a higher NOD2 binding affinity than 7, indicating that introducing the second mannose significantly contributes to the binding affinity. Mannose interacts with key amino acid residues from the LRR hydrophobic pocket of the NOD2 receptor and loop 2.

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来源期刊
Organic & Biomolecular Chemistry
Organic & Biomolecular Chemistry 化学-有机化学
CiteScore
5.50
自引率
9.40%
发文量
1056
审稿时长
1.3 months
期刊介绍: The international home of synthetic, physical and biomolecular organic chemistry.
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